VLDB 2026 Research / reviewers in the wild / expert
Chenjing Tian
dblp:336/4510
· DBLP profile ↗
6ranked-venue papers
5as first author
6since 2021 · last 2026
0000-0003-0850-2841ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Computer networks · 6 · 5 first-author · 6 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | Multi-objective optimization for UAV-assisted wireless sensor network data collection based on DCMOTD3 algorithm
Liying Cui, Chenjing Tian, Zhibin Wu, Minxing Dong, Guangbo Li |
Comput. Networks | 3 |
| 2026 | A Novel Slice Reconfiguration Method for Achieving QoS Guaranteeing and OPEX Saving in 5G Networks
Chenjing Tian, Haotong Cao, Fenglin Jin, Xiaofeng Qiu, Anwer Adel Al-Dulaimi, Shahid Mumtaz |
IEEE Trans. Mob. Comput. | 1 |
| 2024 | Community Detection-Empowered Self-Adaptive Network Slicing in Multi-Tier Edge-Cloud SystemabstractNetwork slicing (NS) is a highly promising paradigm in 5G and forthcoming 6G communication networks. NS allows for the customization of multiple logically independent network slices to provide tailored service for vertical applications with diverse quality of service (QoS) requirements. However, current research on NS primarily relies on the traditional modeling methods such as service function chaining (SFC) and task offloading, which have limitations in adapting to the evolving scenarios in 5G/6G networks. To address this, our study introduces one novel Self-adaptive Network Slicing (SNS) modeling method. In this approach, each service is abstracted as multiple SFC replicas originating from diverse access points. Based on the SNS modeling, we investigate a VNF configuration and flow routing (VCFR) problem for service provisioning in a multi-tier system. With the objective of achieving load-balancing with minimal slice operational expenditure, we formulate the VCFR as a mixed-integer linear programming. However, deriving an exact solution via MILP is computationally expensive due to its NP-hardness. To reduce computational complexity, we propose one Load Balancing-considered Community Detection-based Heuristic (LBCD-Heu), our divide and conquer approach, to solve the problem. In LBCD-Heu, we first design a load balancing-considered community detection method to divide the substrate multi-tier network into multiple independent communities. Following this, the MILP is employed in each community to obtain a near-optimal solution. Extensive evaluations justify that LBCD-Heu can effectively reduce the service operational cost and algorithm run-time while ensuring the load balancing of substrate network. Additionally, our results verify that the SNS modeling enables the provision of services at lower expenditures compared with traditional modeling methods. Chenjing Tian, Haotong Cao, Sahil Garg, Mubarak Alrashoud, Prayag Tiwari |
IEEE Trans. Netw. Serv. Manag. | 1 |
| 2023 | Community Detection-Empowered Hybrid Network Slicing for Aerial Communication ServicesabstractNetwork slicing is the most promising paradigm that enables the provision of services for aerial communication tasks, such as data traffic offloading, disaster relief, and data collection, with one shared physical network. However, current researchers primarily focus on the modeling of utilizing service function chaining (SFC) or task offloading, which have inherent limitations for areial communication tasks. While the former restricts the source-sink nodes to be fixed, the latter models network slicing as a whole. To further unleash the flexibility of network slicing, we introduce the hybrid network slicing (HNS) modeling in this paper. In our HNS, each aerial service is abstracted as multiple SFCs with dispersed source-sink nodes. These SFCs can be flexibly deployed in a unified or split manner based on the service workload and Quality of Service (QoS) requirements. Then, we formulate the HNS problem in a multi-tier network system as a mixed integer programming (MILP) problem and propose exact and community detection-based heuristic approaches to address the proposed problem. The simulation results demonstrate that the proposed heuristic approaches can effectively mitigate computational complexity than the exact method while providing near-optimal solutions for aerial communication tasks. Chenjing Tian, Haotong Cao, Yinjin Fu, Xijian Luo |
GLOBECOM | 1 |
| 2023 | Online and reliable SFC protection scheme of distributed cloud network for future IoT application
Chenjing Tian, Haotong Cao, Yinjin Fu, Sahil Garg, Georges Kaddoum, Mohammad Mehedi Hassan |
Comput. Commun. | 1 |
| 2023 | MADDPG-empowered slice reconfiguration approach for 5G multi-tier system
Chenjing Tian, Haotong Cao, Sahil Garg, Joel J. P. C. Rodrigues, M. Shamim Hossain |
J. Netw. Comput. Appl. | 1 |